Electrolyzed water generation device
    1.
    发明申请

    公开(公告)号:US20200002194A1

    公开(公告)日:2020-01-02

    申请号:US16319153

    申请日:2017-07-20

    发明人: Yoshinobu KOIZUMI

    IPC分类号: C02F1/461

    摘要: An electrolyzed water generation device is provided with a first flow passage delivering electrolyzed water generated in one of a first polar chamber and a second polar chamber of an electrolytic chamber, a second flow passage delivering electrolyzed water generated in the other one of the first polar chamber and the second polar chamber, a double autochange crossline valve in which a flow rate regulating valve 74 and a flow passage switching valve 85 are interlocked, a polarity switching unit 51 switching the polarities of a first power feeder 41 and a second power feeder 42, a current detection unit 44 detecting a current to be supplied to the first power feeder 41 and the second power feeder 42, a storage unit 55 storing a switching interval for the polarity switching unit 51 and the flow passage switching valve 85, and a switching control unit 52 switching the polarity and the flow passage switching valve 85 based on the switching timing. The switching control unit 52 changes the switching interval stored in the storage portion 55 based on an integrated value of currents after switching the polarity.

    Electrolyzed water generating device and Electrolyzed water generating method

    公开(公告)号:US20210254226A1

    公开(公告)日:2021-08-19

    申请号:US17270437

    申请日:2019-08-09

    摘要: An electrolyzed water generating device 1 has an electrolysis chamber 40, a first feeding body 41 and a second feeding body 41 to which a DC voltage is applied, a diaphragm 43 disposed between the first feeding body 41 and the second feeding body 42 to divide the electrolysis chamber 40 into a first-polar chamber 40a and a second-polar chamber 40b, a control unit 5 for switching a polarity of the first feeding body 41 to an anode or a cathode and a polarity of the second feeding body 42 to a cathode or an anode, a flow rate sensor 22 detecting an amount of flowing water into the electrolysis chamber 40 on the cathode side per unit time, and a current detecting means 44 detecting a DC current supplied to the first feeding body 41 and the second feeding body 42. The surfaces of the first feeding body 41 and the second feeding body 42 are formed of a hydrogen storage metal. The control unit 5 calculates a concentration of hydrogen storage metal colloid based on the DC current and an integrated value of the amount of flowing water after switching the polarities.

    ELECTROLYZED WATER GENERATION DEVICE
    3.
    发明申请

    公开(公告)号:US20200024160A1

    公开(公告)日:2020-01-23

    申请号:US16319095

    申请日:2017-07-20

    发明人: Yoshinobu KOIZUMI

    IPC分类号: C02F1/461

    摘要: This electrolyzed water generation device is provided with: a first flow path which delivers electrolyzed water generated in one from among first and second polar chambers of an electrolysis chamber; a second flow path which delivers electrolyzed water generated in the other from among the first and second polar chambers; a double auto-change cross-line valve with which a flow rate adjustment valve 74 and a flow path switching valve 85 are interlocked; a polarity switching means 51 which switches the polarities of a first power feeder 41 and a second power feeder 42; and a determination means 52 which determines the switching timing of the polarity switching means 51 and the flow path switching valve 85. The determination means 52 integrates the time of electrolysis in the electrolysis chamber 40, and determines that the switching timing has arrived when the integrated time t of electrolysis reaches a predetermined threshold value T, without the polarities being switched.

    ELECTROLYZED WATER GENERATION DEVICE
    4.
    发明申请

    公开(公告)号:US20190276341A1

    公开(公告)日:2019-09-12

    申请号:US16319007

    申请日:2017-07-20

    发明人: Yoshinobu KOIZUMI

    IPC分类号: C02F1/461 C02F1/467

    摘要: An electrolyzed water generation device is provided with a first flow passage delivering electrolyzed water generated in one of first polar chamber and second polar chamber of an electrolytic chamber, a second flow passage delivering electrolyzed water generated in the other one of the first polar chamber and second polar chamber, a double autochange crossline valve in which a flow rate regulating valve 74 and a flow passage switching valve 85 are interlocked, a polarity switching unit 51 switching the polarities of a first power feeder 41 and a second power feeder 42, and a determination unit 52 determining the switching timing of the polarity switching unit 51 and the flow passage switching valve 85. The determination unit 52 determines that the switching timing arrives when a predetermined time passes without detecting water supply to the electrolytic chamber after electrolysis is performed by a predetermined number of times or more in the electrolytic chamber without the polarities being switched.

    Functional water production device
    5.
    发明申请

    公开(公告)号:US20190202718A1

    公开(公告)日:2019-07-04

    申请号:US16302721

    申请日:2017-05-18

    发明人: Yoshinobu KOIZUMI

    IPC分类号: C02F1/461

    摘要: A functional water production device 1 comprises: a functional water production unit 2 for producing functional water including purified water, reduced water or acidic water obtained by electrolysis of water; a control unit 6 for controlling the functional water production unit 2 in a plurality of operational modes including a water purification mode, a reduced water mode, and an acidic water mode; and an operation unit 7 for switching the operational modes. The operation unit 7 comprises: an operational surface (71a); a display unit 72 for displaying operational areas 103, 104, and 105 corresponding to the operational modes along a first coordinate axis 101 in an order of pH of the functional water to be produced; and a position detecting unit 73 for detecting a position of the touch by a user on the operational surface (71a). Based on the information of the position, the control unit 6 determines the operational mode, and produces water according to the operational mode.